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替莫唑胺-阿霉素偶联物作为双重嵌入剂,并通过脱铁铁蛋白递送至神经胶质瘤化疗。

Temozolomide-Doxorubicin Conjugate as a Double Intercalating Agent and Delivery by Apoferritin for Glioblastoma Chemotherapy.

机构信息

Key Laboratory of High Performance Polymer Material and Technology of Ministry of Education, Department of Polymer Science & Engineering, School of Chemistry & Chemical Engineering, Nanjing University, Nanjing 210023, China.

出版信息

ACS Appl Mater Interfaces. 2020 Aug 5;12(31):34599-34609. doi: 10.1021/acsami.0c08531. Epub 2020 Jul 23.

Abstract

We designed a conjugated compound by coupling temozolomide (TMZ) with doxorubicin (DOX) via an acylhydrazone linkage as a potential prodrug used for glioblastoma multiforme (GBM) treatment. Viscosity and spectroscopic studies revealed that the drug conjugate could act as a nonclassical double intercalating agent. Although free TMZ is an inefficient DNA binder in comparison to DOX, the TMZ moiety interacted with DNA as an induced intercalator, arising from the synergistic effect of DOX moiety that mediated conformational changes of the DNA helix. Two binding modes were proposed to interpret the double intercalating effect of the drug conjugate on intra- and inter-DNA interactions that could cause DNA cross-linking and fibril aggregates. We also developed a delivery nanoplatform with a loading efficiency of 83% using copper-bound apoferritin as a nanocarrier. In sharp contrast to the short half-life of free TMZ, the nanocomposite was stable under physiological conditions without detectable drug decomposition after a 2 week storage, and drug release was activatable in the presence of glutathione at millimolar levels. The antitumor effect of the drug conjugate and nanocomposite against GBM cells was reported to demonstrate the potential therapeutic applications of double intercalating materials.

摘要

我们设计了一种通过酰腙键将替莫唑胺(TMZ)与多柔比星(DOX)偶联而成的共轭化合物,作为治疗多形性胶质母细胞瘤(GBM)的潜在前药。粘度和光谱研究表明,该药物偶联物可以作为一种非经典的双重嵌入剂。尽管游离 TMZ 与 DOX 相比,与 DNA 的结合效率较低,但 TMZ 部分通过 DOX 部分介导的构象变化作为诱导嵌入剂与 DNA 相互作用,产生协同效应。提出了两种结合模式来解释药物偶联物对 DNA 内和 DNA 间相互作用的双重嵌入效应,这可能导致 DNA 交联和纤维状聚集。我们还使用铜结合脱铁铁蛋白作为纳米载体开发了一种载药效率为 83%的递送纳米平台。与游离 TMZ 的半衰期短形成鲜明对比的是,纳米复合材料在生理条件下稳定,在 2 周储存后没有检测到药物分解,并且在毫摩尔水平的谷胱甘肽存在下可激活药物释放。报道称,该药物偶联物和纳米复合材料对 GBM 细胞的抗肿瘤作用表明了双重嵌入材料的潜在治疗应用。

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